教授
郭坤琨,女,教授,博士生导师,1998年毕业于北京理工大学化工与材料学院;2002年硕士毕业于中国科学院北京化学研究所,导师:方世璧研究员;2005年博士毕业于复旦大学高分子科学系,师从于杨玉良院士。2005年至2009年获得德国马普学会奖学金的资助在德国马克思普朗克胶体与界面研究所国际知名生物物理理论专家Lipowsky教授课题组从事博士后研究。2009年7月任湖南大学材料科学与工程学院副教授。2014年12月晋升为教授、博士生导师。2012年获得日本京都大学FIFC Fellow项目资助,并和日本京都大学展开长期合作。目前主持或已完成国家自然科学基金5项、长沙市重点科技计划、深圳市科技计划项目、教育部归国留学基金、博士点基金、国家重点实验室开放课题、中央高校青年教师成长计划等项目。目前与国内多家知名企事业单位保持紧密合作。近年来在Nature Comm.,J. Am. Chem. Soc., Advanced Materials, Cell reports physics science, Nanoscale、J. Mater. Chem.、ACS Mater&inter、Macromolecules、Soft Matter、J. Power Sources、PCCP、J. Chem. Phys.(等国际著名期刊发表论文80余篇,总引用次数1200余次,H-index指数为20,申请和授权中国发明专利10余项。参与《软物质凝聚态物理发展战略研究报告》中“细胞骨架”的编写工作。
社会任职:担任中国材料学会青年委员会理事、国家自然科学基金通讯评审专家、浙江省自然科学基金邀请通讯评审专家等,担任ACS Materials & Interface, Green Chemistry, Polymer advanced technology, Soft Matter, J. Chem. Phys.等国内外期刊的邀请评审专家。
欢迎具有化学、材料、物理背景的学生加入课题组,联系方式,email地址:kunkunguo@hnu.edu.cn
2002/9–2005/7, 复旦大学, 高分子化学与物理, 博士, 导师:杨玉良 院士
1999/9–2002/7, 中国科学院化学研究所, 高分子化学与物理, 硕士, 导师:方世璧 研究员
1994/9–1998/7, 北京理工大学, 化工与材料学院, 大学本科
2014/12-至今,湖南大学,材料科学与工程学院,教授/博
2009/7-2014/11,湖南大学,材料科学与工程学院,副教授
2012/3-2012/9,京都大学,福井谦一理论化学研究所,研究
2005/8-2009/4,德国马普胶体与界面化学所,博士后,合作导师:Lipowsky教授
[1]松山湖材料实验室开放课题,2023SLABFK05,高电压钴酸锂电极表面导电聚合物调控界面膜生长的机理研究,2025-2026,20万元,主持
[2]国家自然科学基金面上项目,22373032,锂电池电极表面原位聚合凝胶化机理研究,2024/01-2027/12,50万元,在研,主持
[3]企事业委托项目:几种硝胺类粘结剂与增塑剂构效关系研究,2024,15万,主持
[4]企事业委托项目:超临界干燥,2023,28.6万,主持
[5]企事业委托项目:聚合物助剂表界面的研究,2023,16万,主持
[6]企事业委托项目:新型低膨胀高效率锂离子正负极分散剂的研究,2023,15万,主持
[7]企事业委托项目:能量输出性能研究,2022-2025,100万,主持
[8]深圳市科技计划项目,2022-2025,30万,主持
[9]企事业委托项目:聚四氟乙烯填料碳纤维表面改性研究,2021,9.5万,主持
[10]企事业委托项目:氧化石墨烯的增强机理研究,2022,18万,主持
[11]企事业委托项目:增塑剂高通量筛选,2020,19万,主持
[12]企事业委托项目:高温高压化学反应机理,2019-2021,20万,主持
[13]湖南省自然科学基金面上项目,2019-2022, 5万,主持
[14]企事业委托项目:Li-CO2电池中Mo2C催化反应机理剂的第一性原理研究,2018/9-2019/9,8万,主持
[15]国家自然科学基金面上项目,21674034,细菌FtsZ蛋白的组装行为及其在细胞分裂中的作用机制,2017/01-2020/12,63万元,在研,主持
[16]国家自然科学基金面上项目,21274038,ATP水解机理对肌动蛋白组装成纤维过程的影响,2013/01-2016/12,82万元,结题,主持
[17]聚合物分子工程国家重点实验室(复旦大学),K2015-07,自发曲率和囊泡内聚合物浸润转变的关联,2015/01-2015/11,2万元,已结题,主持
[18]湖南省优秀硕士论文指导教师奖,2015, 8000元
[19]中钞油墨有限公司,一种紫外光自由基/阳离子双固化树脂的研发,2014/01-2014/12,10万元,已结题,主持
[20]国家自然科学基金青年项目,21004018,细胞内相分离诱导膜形态转变的机理研究,2011/01-2013/12,19万元,已结题,主持
[21]日本京都大学FIFC Fellow,2012年,80万日元,已结题,主持
[22]国家自然科学基金理论物理专款,10947177,细胞骨架的增长以及其在细胞运动中的作用机理,2010/01-2010/12,3万元,已结题,主持
[23]湖南大学青年教师成长计划,细胞内多组分相结构行为的研究,2009/07 -2014/12,25万元,已结题,主持
[24]高等学校博士学科点专项科研基金,细胞内相分离诱导膜形态的机理研究,2011/01-2013/12,4万元,已结题,主持
[25]留学回国人员科研启动基金,高分子和Janus粒子相互作用研究,2010/06 -2012/06,4万元,已结题,主持
[26]北京分子科学国家实验室开放课题,温和条件下高分子和无机粒子自组装原理研究,2009/10-2011/10,8万元,已结题,主持
[27]国家级大学生创新性训练项目,基于耗散粒子动力学的GPU并行运算,2010 -2012,2万元,已结题
[28]湖南省大学生创新性训练项目,Android平台材料科学科普类应用程序开发,2013-2015,1万元,已结题
代表性论文
[1]Peng CC; Cao LH; Guo KK*; Cheng YJ*; Wang CH*; etc A chronicle of titanium niobium oxide materials for high-performance lithium-ion batteries: From laboratory to industry, Carbon Neutralization, (2024), 1036-1091
[2]Chen NX; Yang SC; Guo KK*, Liu J*; Wang ZH*; Large crystalline domains homogenization via solvent exchange coupled dry annealing for ultrastrong and ultratough hydrogels, The Innovation Materials, (2024) doi/10.59717/j.xinn-mater. 2024.100101
[3]Wu, LC;Fu,HW;Guo, KK, Lu, BA*; Rational Regulation of High-Voltage Stability in Potassium Layered Oxide Cathodes, ACS Nano, (2024)18(20), 13415
[4]Wang, KR; GAO, CX; Tu JA; Guo, KK; Ding YL*; Na-site coordination environment regulation of Mn-based phosphate cathodes for sodium-ion batteries with elevated working voltage and energy density, J. Mater. Chem. A, (2024) 6681-6692
[5]Deng J; Chen NX; Guo KK*; Wang ZH*; Liu J*; etc Supercooling-Driven Homogenization and Strengthening of Hydrogel Networks, ACS Applied Mater&Inter. (2024), 54587-54596
[6]Zeng Z; Yu L, Yang SC; Guo KK; Wang ZH; Tuning water-cellulose interactions via copper-coordinated mercerization for hydro-actuated, shape-memory cellulosic hydroplastics, Matter, 2024, DOI:10.1016/j.matt.2024.04.033
[7]Yin JY; Luo YZ; Li M; Wu MF*; Guo KK*; Wen ZY*; Electrolyte Additive Lysine Stabilizes the Zinc Electrode in Aqueous Zinc Batteries for Long Cycling Performance, ACS Applied Mater&Inter. (2024),53242-53251
[8]Hu, J; Yin, JY; Peng, AY; Zeng, DS; Ke, JL; Liu, JL; Guo, kunkun*; In Situ Hydroxide Growth over Nickel-Iron Phosphide with Enhanced Overall Water Splitting Performance, SMALL, (2024), 2402881
[9]Luo, YZ;Yin, JY;Chen, P;Wang, B;Xu, JT;Wang, ZH; Guo Kunkun*, Less is More: Underlying Mechanism of Zn Electrode Long-Term Stability using Sodium L-Ascorbate as Electrolyte Additive, Small, (2024), 2310824
[10]Wu, LC;Fu, HW;Li, S;Zhu, J;Zhou, J;Rao, AM;Cha, LM;Guo, KK(Guo, Kunkun);Wen, SC;Lu, BA*, Phase-engineered cathode for super-stable potassium storage, Nature Communication, 14(1), 2023, 644
[11]Ying Ye, Yuzhe Luo, Jiatao Lou, Xuli Chen*, Ya-Jun Cheng, Jianfeng Xia, Yaobang Li, and Kunkun Guo*, Hollow Spherical NiCo2S4@N-CNT Composites with High Energy Density for All-Solid-State Supercapacitors, ACS Applied Energy Materials, 12(6), 2023, 6742-6751
[12]CancanPeng , Chao Yang, Peng Chen, Ya-Jun Cheng, Jianfeng Xia, Kunkun Guo *, Mesoporous carbons and Fe collectively boost the capacity increases upon Long-term cycling of Ni/Fe/NiFe2O4@C anode for Lithium-ion batteries, Applied surface science, 623(2023), 156994
[13]Xu, YT;Chafi, FZ;Chen, P;Peng, CC;Cheng, YJ*;Guo, KK*;Zuo, XX;Xia, YG*, More than Just a Binder: Versatile Block Copolymer Enhances the Electrochemical Performance of a Nickel-Rich Cathode, ACS applied polymer materials. 2023,5,7,4654-4663
[14]Ming Yang, Peng Chen, Jiapei Li, Ruoxuan Qi, Yudai Huang, d Peter Müller, Buschbaum, ef Ya-Jun Cheng,* Kunkun Guo* and Yonggao*, Poly(acrylic acid) locally enriched in slurry enhances the electrochemical performance of the SiOx lithium-ion battery anode, J. Mater. Chem A, 2023, 11, 6205
[15]Li, JP;Chen, P;Zhang, J;Ji, Q;Yang, M;Huang, YD;Cheng, YJ*;Guo, KK*;Xia, YG* Having Your Cake and Eating It Too: Electrode Processing Approach Improves Safety and Electrochemical Performance of Lithium-Ion Batteries, ACS Applied Materials & interfaces 2023, 15, 12, 15561-15573
[16]Hu, Jian; Yang, Chao; Guo Kunkun*, Understanding the electrochemical reaction mechanisms of precious metals Au and Ru as cathode catalysts in Li-CO2 batteries, Journal of Materials Chemistry A, 10 (26), 14029-14040 (2022)
[17]Chen, Peng; Yang, Chao; Guo Kunkun* etc, Distinctive Formation of Bifunctional ZnCoS-rGO 3D Hollow Microsphere Flowers with Excellent Energy Storage Performances, Chemistry of Materials, 34(13), 5896-5911 (2022)
[18]Ye, Ying; Chen Xuli; Guo Kunkun*, Thorn-like nanostructured NiCo2S4 arrays anchoring graphite paper as self-supported electrodes for ultrahigh rate flexible supercapacitors, Electrochimica Acta, 399, 139420 (2021)
[19]Yang, Chao; Guo Kunkun*; Yuan Dingwang etc, Unraveling Reaction Mechanisms of Mo2C as Cathode Catalyst in a Li-CO2 Battery, JACS 142(15), 6983-6990 (2020)
[20]Ding, Jiannan; Chen Xuli; Guo Kunkun*, etc Rational Design of Coplanar Polypyrrole-Based Graphene Hydrogels with Excellent Energy-Storage Performance, Small Structures, 2(11), 2100073 (2021)
[21]Wang, Bin; Guo, Kunkun*; Liu, Jilei* etc Mechanical Insights into the Electrochemical Properties of Thornlike Micro-/Nanostructures of PDA@MnO2@NMC Composites in Aqueous Zn Ion Batteries, ACS Applied Materials & interfaces, 14(31), 36079 (2022)
[22]Liu, Ruizhe; Yang, Chao; Guo Kunkun*; Xu Jiangtao* etc. Unraveling Sequence Effect on Glass Transition Temperatures of Discrete Unconjugated Oligomers Macro. Rapid Commun. 43(4), 2100666 (2022)
[23]Ding, Jiannan; Chen, Peng; Chen, Xuli; Guo, Kunkun*, Self-Assemble Strategy to Fabricate High Polyaniline Loading Nanocarbon Hydrogels for Flexible All-Solid-State Supercapacitors, ACS Applied Energy Materials, 4(4), 3766 (2021)
[24]Fan, Xiaoying; Chen, Peng; Cheng, Yajun*; Guo, Kunkun*; Xia, Yonggao*, etc One Stone for Multiple Birds: A Versatile Cross-Linked Poly(dimethyl siloxane) Binder Boosts Cycling Life and Rate Capability of an NCM 523 Cathode at 4.6 V, ACS Applied Materials & interfaces, 14(14), 16245 (2022)
[25]Qi, Ruoxuan; Yang, Chao; Cheng, Yajun*; Guo, Kunkun*; Xia, Yonggao*, etc. Less is more: tiny amounts of insoluble multi-functional nanoporous additives play a big role in lithium secondary batteries, Journal of materials Chemistry A, 10 (14), 8047 (2022)
[26]Chen, Peng; Yang, Jianxiao; Guo Kunkun*, A Hydrothermal Strategy to Fabricate Carbons-Doped Polyaniline Hydrogels with Separation-Free for Flexible All-Solid-State Supercapacitors, Macromolecular Materials and Engineering, 306(10), 2100274 (2021)
[27]Su, Hailan; Xiong, Tuzhi; Tang, Jie*; Guo Kunkun* etc Asymmetric Pseudocapacitors Based on Interfacial Engineering of Vanadium Nitride Hybrids, Nanomaterials, 10(6), 1141, (2020)
[28]Chao Yang, Kunkun Guo*, Dingwang Yuan*, Jianli Cheng, Bin Wang, Unraveling Reaction Mechanisms of Mo2C as Cathode Catalyst in a Li-CO2 Battery, J. Am. Chem. Soc. 142, 15(2020), 6983
[29]Yi Xie, Chao Yang, Kunkun Guo*, MnO2-decorated hierarchical porous carbon composites for high-performance asymmetric supercapacitors, J. Power Sources, 425(2019)1-9
[30]Peng Chen, Chao Yang, Zi He, Kunkun Guo*, One-pot facile route to fabricate the precursor of sulfonated graphene/N-doped mesoporous carbons composites for supercapacitors, J. Mater. Sci,54(2019), 4180
[31]Jingwen Zhou, Xuelian Li, Chao Yang, Yinchuan Li, Kunkun Guo etc, A Quasi-solid-state flexible fiber-shaped li-CO2 battery with low overpotential and high energy efficiency, Advanced. Mater. 2018, 1804439
[32]Yi Xie Y, KunkunGuo*. Phase Interfaces within Different Vesicle Shapes, Journal of Physics: Condensed Matter, 30(2018), 345101
[33]Suhui Lu, Kunkun Guo*, Yi Xie, Jiale Ning, Ordered mesoporous carbons loading on sulfonated graphene by multi-components co-assembly for supercapacitor applications, Energy Technology, 6(2018), 1975
[34]Peng Chen, Suhui Lu, Chao Yang, Zi He, Xuli Chen, Kunkun Guo*, Ordered mesoporous carbons loading on graphene after different molten salt activations for supercapacitor applications, Energy Technology, 2018,https://doi.org/ 10.1002/201800281
[35]Suhui Lu, Yanjie Song,Kunkun Guo*, Effect of aqueous electrolytes on the electrochemical behaviors of ordered mesoporous carbon composites after KOH activation as supercapacitors electrodes, Journal of Electroanalytical Chemistry, 818, 58-67 (2018)
[36]Zhu Li,Kunkun Guo*, Xuli Chen, Controllable Synthesis of Nitrogen-doped Mesoporous Carbons for Supercapacitor Applications, RSC ADV, 7, 30521, 2017
[37]Zi He, Kunkun Guo*, Exploration of cell division times during bacterial cytokinesis, PCCP, 19, 32038(2017)
[38]Yanjie Song, Zhu Li, Kunkun Guo*, Ting Shao, Hierarchically ordered mesoporous carbon/graphene composites as supercapacitor electrode materials, Nanoscale, 8, 15671 (2016).
[39]Kunkun Guo*, Yi Xie, Dynamics of actin monomers assembled into long filaments, Acta Phys. Sin.65(17),178100(2016) Invited review
[40]Zi He, Zhuan Liu, Kunkun Guo*, Effects of various kinetic rates of FtsZ filaments on bacterial cytokinesis, PCCP,17(47), 31966 (2015)
[41]Fengdan Liu, Yanjie Song,Kunkun Guo*, Effect of Molecular Chain length on the properties of amine-functionalized grapheme oxide nanosheets/epoxy resins nanocomposites, Rsc Adv., 5,45987(2015)
[42]Zhuan Liu, Kunkun Guo*,Coupling FtsZ filaments and morphodynamics during bacterial cell division, RSC Adv., 4, 56665(2014)
[43]Fengdan Liu, Kunkun Guo*, Reinforcing epoxy resins through covalent integration of functionalized graphene sheets, Polymer Advanced Technologies, 25, 418 (2014)
[44]Kunkun Guo*, Wenjia Xiao, Kenichi Yoshikawa Wetting transitions within membrane compartments, Soft matter, 10,5311(2014)
[45]Wenjia Xiao, Kunkun Guo*, Shapes of vesicle encapsulating two aqueous phases, Soft Matter, 10, 2593(2014)
[46]Fengdan Liu, Kunkun Guo*, Jianmin Yuan Preparation of the modified epoxy resins with flexible DGEG, High performance polymers, 26(3),326(2014)
[47]Huajun Liu, Kunkun Guo*, Qian Chen, Yao Ma,GPU-accelerated dissipative particle dynamics simulations, Journal of Computer Applications, 34(S1):74-77,81(2014) (Chinese).
[48]Zhuan Liu,Kunkun Guo* Cell morphodynamics via phase field dynamics Acta Chimica Sinica, V71(02):1183-1188(2013) (Chinese).
[49]LY Xia, Mq Zhang, Mz Rong, Kunkun Guo, An easy soft-template route to syntheis of wormhole-like mesoporous tungsten carbide/carbon composites, Composites Science and technology, 72, 1651(2012)
[50]Guo KK*, Xiao WJ, Qiu D Polymerization of actin filaments coupled with adenosine triphosphate hydrolysis: Brownian dynamics and theoretical analysis J. Chem. Phys. 135 (2011).
[51]Guo KK*, Li JF, Exploration of the Shapes of double-walled vesicles with a confined inner membrane, J. Phys.: Condens. Matter23:285103(2011).
[52]Guo KK*, Han WC, Growth of Dynamic Actin Filament via Brownian Dynamics Simulations, Acta Chimica Sinica, V69(02):145-152 (2011) (Chinese).
[53]Guo KK*, Shillcock JC, Lipowsky R*, Treadmilling of Actin Filaments via Brownian dynamics simulations, Journal of Chemical Physics, 133(15), pp 155105-1-155105-9(2010) which has been selected for the Octuber 2010 issue of JCP: BioChemical Physics.
[54]Wang JF, Guo KK, An LJ, Mueller M, Wang ZG, Micelles of Coil-Comb Block Copolymers in Selective Solvents: Competition of Length Scales, Macromolecules, 43:2037-2041(2010).
[55]Guo KK*, Shillcock JC, Lipowsky R*, Self-assembly of actin monomers into long filaments: Brownian Dynamics Simulations, Journal of Chemical Physics, 131,015102-015112(2009), which has been selected for the July 13, 2009 issue of Virtual Journal of Nanoscale Science & Technology.
[56]Guo KK, Wang JF, Qiu F, Zhang HD, Yang YL*, Shapes of fluid vesicles anchored by polymer chains,Soft Matter, 5:1646-1655 (2009).
[57]Guo KK,Qiu F, Zhang HD, Yang YL, Rigid rod anchored to infinite membrane, Journal of Chemical Physics 123: 074906 (2005).
[58]Guo KK, Qiu F, Zhang HD, Yang YL, Polymer anchored to the infinite membrane, Acta Physica Sinica55(01) 0155-07(2006) Chinese).
[59]Wang JF, Guo KK, Qiu F, Zhang HD, Yang YL, Predicting shapes of polymer chain anchored fluid vesicles, Physical Review E. 71: 041908 (2005).
[60]Pan QM, Guo KK, Wang LZ, Fang SB, Impedance study on graphite encapsulated with ionic conducting polymer for lithium-ion batteries, Electrochemical and Solid State Letters 6 (12): A265-A267 DEC (2003).
[61]Guo KK,Pan QM, Fang SB, Poly (acrylonitrile) encapsulated graphite as anode materials for lithium ion batteries, Journal of Power Sources 111 (2): 350-356 SEP 23 (2002).
[62]Pan QM,Guo KK, Wang LZ, Fang SB, Novel modified graphite as anode material for lithium ion batteries, Journal of Materials Chemistry 12 (6): 1833-1838 (2002).
[63]Pan QM, Guo KK, Wang LZ, Fang SB, Novel modified graphite as anode material for lithium-ion batteries, Journal of the Electrochemical Society149 (9): A1218-A1223 SEP (2002).
[64]Pan QM, Guo KK, Wang LZ, Fang SB, Ionic conductive copolymer encapsulated graphite as an anode material for lithium ion batteries, Solid State Ionics149 (3-4): 193-200 AUG (2002).
[65]Guo KK, Pan Q, Wang L, Fang S, Nano-scale copper-coated graphite as anode material for lithium-ion batteries, Journal of Applied Electrochemistry32 (6): 679-685 JUN (2002).
[66]Pan QM, Guo KK, Wang LZ, Fang SB, Ionic conductive polymer coated graphite as an anode material for lithium ion batteries, Battery38, (2002) (supply) (Chinese).
[67]DY Wang, KK Guo, Gb Gong, Xz Qu, Rf Liang, Studies on Butadiene–Styrene Resin (K-Resin) and Its Emulsion, of National Symposium on Polymers, Chinese Chemical Society(May 9-14, 1999, Shanghai), pp.a77-78
[68]DY Wang, KK Guo, GB Gong, XZ Qu, RF Liang, Rheological Properties of HNBR and Its Solutions, of National Symposium on Polymers, Chinese Chemical Society(May 9-14, 1999, Shanghai), pp.a79-80
[1]湖南省优秀硕士论文指导教师奖,湖南省人民政府学位委员会、湖(1/1)郭坤琨 南省教育厅,其它,其它,2015,2018。(郭坤琨)奖励
[2]湖南大学大学生创新训练计划项目二等奖,湖南大学教务处,其它(1/1)郭坤琨 ,其它,2013。(郭坤琨)奖励
[3]德国马普胶体与界面研究所奖学金,2005-2009
[4]日本京都大学福井歉一研究所Fellow奖学金,2012
湖南大学-国家卓越工程师学院 版权所有
校址:湖南省长沙市岳麓区麓山南路麓山门 | 邮箱:zgxy@hnu.edu.cn | 邮编:410082
湘教QS4-201312-010059 湘ICP备09007699号

微信公众号